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Speciation of Aluminium in Mixtures of the Ionic Liquids [C3mpip][NTf2] and [C4mpyr][NTf2] with AlCl3: An Electrochemical and NMR Spectroscopy Study
Authors:Theo Rodopoulos Dr  Leanne Smith  Michael D Horne  Thomas Rüther Dr
Institution:1. CSIRO Minerals and Light Metals Flagship, Box 312, Clayton South, Victoria, 3169 (Australia), Fax: (+61)?395‐628‐919;2. CSIRO Energy Technology and Light Metals Flagship, Box 312, Clayton South, Victoria, 3169 (Australia)
Abstract:This paper reports on the electrodeposition of aluminium on several substrates from the air‐ and water‐stable ionic liquids 1‐propyl‐1‐methylpiperidinium bis(trifluoromethylsulfonyl)amide (C3mpip]NTf2]) and 1‐butyl‐1‐methylpyrrolidinium bis(trifluoromethylsulfonyl)amide (C4mpyr]NTf2]), which contain anhydrous AlCl3. At an AlCl3 concentration of 0.75 molal, no evidence for aluminium electrodeposition was observed in either system at room temperature. However, aluminium electrodeposition becomes feasible upon heating the samples to 80 °C. Aluminium electrodeposition from bis(trifluoromethylsulfonyl)amide‐based ionic liquids that contain AlCl3 has previously been shown to be very dependent upon the AlCl3 concentration and has not been demonstrated at AlCl3 concentrations below 1.13 molal. The dissolution of AlCl3 in C3mpip]NTf2] and C4mpyr]NTf2] was studied by variable‐temperature 27Al NMR spectroscopy to gain insights on the electroactive species responsible for aluminium electrodeposition. A similar change in the aluminium speciation with temperature was observed in both ionic liquids, thereby indicating that the chemistry was similar in both. The electrodeposition of aluminium was shown to coincide with the formation of an asymmetric four‐coordinate aluminium‐containing species with an 27Al chemical shift of δ=94 and 92 ppm in the C3mpip]NTf2]–AlCl3 and C4mpyr]NTf2]–AlCl3 systems, respectively. It was concluded that the aluminium‐containing species that give rise to these resonances corresponds to the electroactive species and was assigned to AlCl3(NTf2)]?.
Keywords:aluminum  cyclic voltammetry  electrodeposition  ionic liquids  NMR spectroscopy
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